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Functional properties of neuroglobin and cytoglobin. Insights into the ancestral physiological roles of globins

机译:神经球蛋白和细胞球蛋白的功能特性。洞察球蛋白的祖先生理作用

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摘要

Neuroglobin and cytoglobin are two recently discovered vertebrate globins, which are expressed at low levels in neuronal tissues and in all tissues investigated so far, respectively. Based on their amino acid sequences, these globins appear to be phylogenetically ancient and to have mutated less during evolution in comparison to the other vertebrate globins, myoglobin and hemoglobin. As with some plant and bacterial globins, neuroglobin and cytoglobin hemes are hexacoordinate in the absence of external ligands, in that the heme iron atom coordinates both a proximal and a distal His residue. While the physiological role of hexacoordinate globins is still largely unclear, neuroglobin appears to participate in the cellular defence against hypoxia. We present the current knowledge on the functional properties of neuroglobin and cytoglobin, and describe a mathematical model to evaluate the role of mammalian retinal neuroglobin in supplying O-2 supply to the mitochondria. As shown, the model argues against a significant such role for neuroglobin, that more likely plays a role to scavenge reactive oxygen and nitrogen species that are generated following brain hypoxia. The O-2 binding properties of cytoglobin, which is upregulated upon hypoxia, are consistent with a role for this protein in O-2-requiring reactions, such as those catalysed by hydroxylases.
机译:神经球蛋白和细胞球蛋白是最近发现的两种脊椎动物球蛋白,它们分别在神经元组织和迄今为止研究的所有组织中低水平表达。基于它们的氨基酸序列,这些球蛋白似乎是系统进化的古老分子,与其他脊椎动物球蛋白,肌红蛋白和血红蛋白相比,它们在进化过程中的突变较少。与某些植物和细菌球蛋白一样,在没有外部配体的情况下,神经球蛋白和细胞血红素的血红素是六配位的,因为血红素铁原子既能同时作用于近端也能作用于远端的His残基。尽管六配位球蛋白的生理作用仍不清楚,但神经球蛋白似乎参与了抗缺氧的细胞防御。我们目前对神经球蛋白和细胞球蛋白的功能特性的当前知识,并描述数学模型,以评估哺乳动物视网膜神经球蛋白在向线粒体供应O-2的作用。如图所示,该模型反对明显的神经球蛋白作用,即更可能起到清除脑缺氧后产生的活性氧和氮的作用。细胞氧蛋白的O-2结合特性在缺氧时会上调,与该蛋白在需要O-2的反应(例如由羟化酶催化的反应)中的作用一致。

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